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Classifying drivers of global forest loss
by
Slay, Christy M.
, Tyukavina, Alexandra
, Harris, Nancy L.
, Hansen, Matthew C.
, Curtis, Philip G.
in
Agriculture
/ Commodities
/ Conversion
/ Deforestation
/ Forest management
/ Forestry
/ Image classification
/ Image resolution
/ Land cover
/ Land use
/ NGOs
/ Nongovernmental organizations
/ Palm oil
/ Satellite imagery
/ Supply chains
/ Urbanization
/ Wildfires
/ Wood fibers
2018
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Classifying drivers of global forest loss
by
Slay, Christy M.
, Tyukavina, Alexandra
, Harris, Nancy L.
, Hansen, Matthew C.
, Curtis, Philip G.
in
Agriculture
/ Commodities
/ Conversion
/ Deforestation
/ Forest management
/ Forestry
/ Image classification
/ Image resolution
/ Land cover
/ Land use
/ NGOs
/ Nongovernmental organizations
/ Palm oil
/ Satellite imagery
/ Supply chains
/ Urbanization
/ Wildfires
/ Wood fibers
2018
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Do you wish to request the book?
Classifying drivers of global forest loss
by
Slay, Christy M.
, Tyukavina, Alexandra
, Harris, Nancy L.
, Hansen, Matthew C.
, Curtis, Philip G.
in
Agriculture
/ Commodities
/ Conversion
/ Deforestation
/ Forest management
/ Forestry
/ Image classification
/ Image resolution
/ Land cover
/ Land use
/ NGOs
/ Nongovernmental organizations
/ Palm oil
/ Satellite imagery
/ Supply chains
/ Urbanization
/ Wildfires
/ Wood fibers
2018
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Journal Article
Classifying drivers of global forest loss
2018
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Overview
Forest loss is being driven by various factors, including commodity production, forestry, agriculture, wildfire, and urbanization. Curtis et al. used high-resolution Google Earth imagery to map and classify global forest loss since 2001. Just over a quarter of global forest loss is due to deforestation through permanent land use change for the production of commodities, including beef, soy, palm oil, and wood fiber. Despite regional differences and efforts by governments, conservationists, and corporations to stem the losses, the overall rate of commodity-driven deforestation has not declined since 2001. Science , this issue p. 1108 A high-resolution global map enables a classification of the main drivers of forest loss. Global maps of forest loss depict the scale and magnitude of forest disturbance, yet companies, governments, and nongovernmental organizations need to distinguish permanent conversion (i.e., deforestation) from temporary loss from forestry or wildfire. Using satellite imagery, we developed a forest loss classification model to determine a spatial attribution of forest disturbance to the dominant drivers of land cover and land use change over the period 2001 to 2015. Our results indicate that 27% of global forest loss can be attributed to deforestation through permanent land use change for commodity production. The remaining areas maintained the same land use over 15 years; in those areas, loss was attributed to forestry (26%), shifting agriculture (24%), and wildfire (23%). Despite corporate commitments, the rate of commodity-driven deforestation has not declined. To end deforestation, companies must eliminate 5 million hectares of conversion from supply chains each year.
Publisher
The American Association for the Advancement of Science
Subject
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